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短脉冲激光驱动锥形靶中的加热机制。

Heating mechanisms in short-pulse laser-driven cone targets.

作者信息

Mason R J

机构信息

Applied Physics Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Phys Rev Lett. 2006 Jan 27;96(3):035001. doi: 10.1103/PhysRevLett.96.035001. Epub 2006 Jan 23.

Abstract

The fast ignitor is a modern approach to laser fusion that uses a short-pulse laser to initiate thermonuclear burn. In its simplest form the laser launches relativistic electrons that carry its energy to a precompressed fusion target. Cones have been used to give the light access to the dense target core through the low-density ablative cloud surrounding it. Here the ANTHEM implicit hybrid simulation model shows that the peak ion temperatures measured in recent cone target experiments arose chiefly from return current joule heating, mildly supplemented by relativistic electron drag. Magnetic fields augment this heating only slightly, but capture hot electrons near the cone surface and force the hot electron stream into filaments.

摘要

快速点火器是一种用于激光核聚变的现代方法,它利用短脉冲激光引发热核燃烧。最简单的形式是,激光发射相对论电子,将其能量传递到预压缩的聚变靶标上。锥形物已被用于使光通过围绕致密靶标核心的低密度烧蚀云进入该核心。在此,ANTHEM隐式混合模拟模型表明,在最近的锥形靶标实验中测得的峰值离子温度主要源于回流焦耳加热,并略有相对论电子拖曳的补充。磁场对这种加热的增强作用很小,但会捕获锥形物表面附近的热电子,并迫使热电子流形成细丝。

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